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首页> 外文期刊>Clinical and Experimental Immunology: An Official Journal of the British Society for Immunology >From stability to dynamics: understanding molecular mechanisms of regulatory T cells through Foxp3 Foxp3 transcriptional dynamics
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From stability to dynamics: understanding molecular mechanisms of regulatory T cells through Foxp3 Foxp3 transcriptional dynamics

机译:从稳定性到动态:了解通过Foxp3 Foxp3转录动力学的调节T细胞的分子机制

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Summary Studies on regulatory T cells (T reg ) have focused on thymic T reg as a stable lineage of immunosuppressive T cells, the differentiation of which is controlled by the transcription factor forkhead box protein 3 (Foxp3). This lineage perspective, however, may constrain hypotheses regarding the role of Foxp3 and T reg in vivo , particularly in clinical settings and immunotherapy development. In this review, we synthesize a new perspective on the role of Foxp3 as a dynamically expressed gene, and thereby revisit the molecular mechanisms for the transcriptional regulation of Foxp3 . In particular, we introduce a recent advancement in the study of Foxp3‐mediated T cell regulation through the development of the Timer of cell kinetics and activity (Tocky) system, and show that the investigation of Foxp3 transcriptional dynamics can reveal temporal changes in the differentiation and function of T reg in vivo . We highlight the role of Foxp3 as a gene downstream of T cell receptor (TCR) signalling and show that temporally persistent TCR signals initiate Foxp3 transcription in self‐reactive thymocytes. In addition, we feature the autoregulatory transcriptional circuit for the Foxp3 gene as a mechanism for consolidating T reg differentiation and activating their suppressive functions. Furthermore, we explore the potential mechanisms behind the dynamic regulation of epigenetic modifications and chromatin architecture for Foxp3 transcription. Lastly, we discuss the clinical relevance of temporal changes in the differentiation and activation of T reg .
机译:对调节性T细胞(T reg)的概述研究将胸腺T肾上腺素作为免疫抑制T细胞的稳定谱系,其分化由转录因子箱蛋白3(Foxp3)控制。然而,这种谱系认为可以限制关于Foxp3和T中的作用的假设,特别是在临床环境和免疫治疗开发中。在本综述中,我们将FoxP3作为动态表达基因的作用合成了一种新的视角,从而重新审视Foxp3的转录调节的分子机制。特别是,我们通过开发细胞动力学和活动(TOCKY)系统的调节,介绍了Foxp3介导的T细胞调节的最新进展,并表明Foxp3转录动力学的调查可以揭示差异化的时间变化和体内T reg的功能。我们突出了Foxp3作为T细胞受体(TCR)信号传导下游的基因的作用,并表明时间持久性TCR信号引发自活性胸腺细胞中的Foxp3转录。此外,我们将FoxP3基因的自动调节转录电路具有用于固结T Reg分化并激活其抑制功能的机制。此外,我们探讨了对富浦3转录的表观遗传修饰和染色质架构的动态调节后的潜在机制。最后,我们讨论了T reg分化和激活的时间变化的临床相关性。

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